市场调查报告书
商品编码
1373599
3D列印全球市场规模、份额、产业趋势分析报告:2023-2030年按组件、技术、用途、产业和地区分類的展望与预测Global 3D Printing Market Size, Share & Industry Trends Analysis Report By Component (Product, Software, and Services), By Technology, By Application, By Vertical, By Regional Outlook and Forecast, 2023 - 2030 |
到 2030 年,3D 列印市场规模预计将达到 864 亿美元,预测期内年复合成长率年增长率为 21.4%。
根据KBV Cardinal矩阵的分析,佳能公司在3D列印市场处于领先。 Autodesk, Inc.、Stratasys Ltd. 和 3D Systems Corporation 等公司是 3D 列印市场的主要创新者。 2022 年 5 月,Stratasys 推出了 F190 CR 和 F370 CR 机器、F123 系列 FDM 3D 列印机,以及为生产最终用途部件的製造商和工业机械师开发的新型碳纤维增强 FDM Nylon-CF10 材料。固定装置和工件夹持工具。
市场成长要素
加大国家和地方政府的法规支持
世界各国政府都认识到 3D 列印在促进创新、促进本地製造业和解决各种社会挑战方面的潜力。作为「中国製造2025」计画的一部分,中国正在大力投资3D列印,以提高製造能力。德国政府支持各种 3D 列印项目和研究计划,尤其是工业 4.0 领域。德国领先的研究机构弗劳恩霍夫研究所参与了许多积层製造计画。一些政府提供税收优惠和补贴,鼓励製造业和小型企业采用 3D 列印。这些激励措施有助于减少 3D 列印设备和材料所需的初始投资。因此,政府机构不断增加的支持使市场得以扩大。
全球製造业扩张
全球製造业的扩张正在对3D列印市场产生重大影响。其中一项重大影响是 3D 列印技术在各製造业的日益普及。随着製造商寻求简化生产流程、缩短交货时间并提高成本效率,3D 列印提供了极具吸引力的解决方案。此外,这种扩张也增强了传统製造流程和 3D 列印之间的协作。该公司正在整合3D 列印来创建模具和原型,以支援从设计到生产的无缝过渡。因此,全球製造业的扩张透过推动采用、促进创新、促进按需生产以及促进 3D 列印与传统製造流程之间的协作,对 3D 列印市场产生重大影响。我给予。
市场抑制因素
初始成本高,材料选择有限
3D 列印技术的高昂初始成本可能会严重阻碍其广泛采用和发展。对于许多公司和组织,尤其是中小型企业来说,购买3D列印设备和相关基础设施所需的高额前期投资可能是阻碍力。这些成本包括3D列印机本身的采购成本、材料成本、软体成本、维护成本等。因此,材料选择受到限制,这可能会阻碍 3D 列印在生产需要多种材料选择的行业中的采用。因此,高昂的初期成本和有限的材料选择极大地阻碍了3D列印市场的成长。
组件展望
根据组件,3D 列印市场分为产品、软体和服务。 2022年,服务领域在3D列印市场中获得了可观的成长率。由于印刷技术和材料的进步,服务部门作为利润产生的来源正在获得巨大的动力。由于3D列印技术允许製造具有复杂形状的产品,并且与传统製造方法相比提供有竞争力的价格,因此来自各个行业的许多公司为了生存,我们预计他们将从产品设计到製造的一切都外包。
产品展望
产品部分进一步分为印表机和材料。 2022 年,印表机领域在 3D 列印市场中占据最大的收益占有率。 3D 列印机是一种多功能工具,可提供快速原型製作,使设计人员能够快速迭代和测试概念。这些印表机对于小批量生产来说具有成本效益,鼓励定制,并减少材料浪费。它还可以支援按需和本地化製造,缩短供应链,并作为教育工具。
印表机前景
印表机领域又分为工业级和桌面级。 2022年,桌面领域在3D列印市场收益占有率中取得了显着的成长。桌上型 3D 列印机通常比工业级印表机更经济实惠,因此更适合预算有限的个人、爱好者、小型企业和教育机构。许多桌上型 3D 列印机的设计都是使用者友好型的,并且需要最少的设定。它们通常配备直觉的软体介面,可简化 3D 列印过程,甚至初学者也能轻鬆上手。
软体景观
根据软体,3D列印市场分为设计软体、侦测软体、印表机软体和扫描软体。 2022 年,设计软体领域在 3D 列印市场中占据最大的收益占有率。 3D 设计软体具有许多优势。它使设计师和工程师能够准确、轻鬆地创建复杂的 3D 模型,从而促进快速原型设计和产品开发。它们通常包括设计检验和分析功能,以帮助在设计过程的阶段识别和解决潜在问题。
技术展望
依技术划分,3D 列印市场分为立体光刻、选择性雷射烧结、电子束熔化、熔融增材製造等。 2022 年,立体光刻技术在 3D 列印市场中占据最大的收益占有率。立体光刻 (SLA) 以其出色的精度和表面光洁度而闻名。它擅长生产高度精细和复杂的零件,非常适合珠宝饰品、牙科和医疗领域的用途。 SLA 能够以最少的支撑结构创建复杂的几何形状,从而减少了后处理工作量,从而节省了时间和资源。
应用前景
根据用途,3D 列印市场分为教育/研究、视觉辅助、演示建模、组装和组装、原型工具、金属铸造、功能零件等。在2022年的3D列印市场中,组装领域呈现显着的成长速度。 3D 列印的精确度对于创建具有精确配合和组装能力的零件来说具有无价的价值。能够生产无缝整合的零件,并减少加工后调整的需求。这提高了产品品质,简化了製造,并减少了组装时间。该技术还支援准时生产,消除多余库存并降低储存成本。
产业展望
按行业划分,3D 列印市场分为教育、工业、汽车、航太和国防、医疗保健、消费品、建筑等。航太和国防领域的3D列印市场在2022年录得可观的成长率。 3D 列印显着减轻了航太和太空船零件的重量,提高了燃油效率并降低了生产成本,从而改变了航空航太和国防领域的游戏规则。该技术可实现复杂、轻质、高强度零件的快速原型设计和生产,从而提高性能、减少维护要求并缩短创新週期。
区域展望
从区域来看,我们对北美、欧洲、亚太地区和拉丁美洲地区的 3D 列印市场进行了分析。 2022年,北美地区在3D列印市场中占据最大的收益占有率。北美製造商越来越多地使用 3D 列印进行小批量、小批量生产。 COVID-19 大流行凸显了供应链弹性的重要性。 3D 列印支援本地化按需製造,减少对全球供应链的依赖并确保更具弹性的生产流程。北美医疗保健产业正在将 3D 列印应用于患者专用植入物、手术导板和医疗设备用途。这些应用可以改善患者的治疗效果、减少手术时间并增强医疗照护。
The Global 3D Printing Market size is expected to reach $86.4 billion by 2030, rising at a market growth of 21.4% CAGR during the forecast period.
3D printing is transforming healthcare by allowing the production of patient-specific implants, prosthetics, and anatomical models for surgical planning. Consequently, the Healthcare segment would register 1/5th share in the market by 2030. This technology improves patient outcomes, reduces surgery times, and enhances medical training. The dental industry benefits from 3D-printed crowns, bridges, and orthodontic devices. Drug delivery systems and tissue engineering applications have also emerged, offering promising solutions for personalized medicine and regenerative therapies. The efficiency, precision, and customization capabilities of 3D printing in healthcare significantly impacts patient care and the medical field's overall advancement.
The major strategies followed by the market participants are Product Launches as the key developmental strategy to keep pace with the changing demands of end users. For instance, In June, 2023, Voxeljet AG unveiled Cold IOB, a new inorganic 3D process technology. This launch would be an important step towards further adoption of printed cores and molds with inorganic binders in the foundry industry. Additionally, In June, 2022, Stratasys unveiled Stratasys RadioMatrix, to produce 'radio-realistic models' that could be under CT scans & X-rays.
Based on the Analysis presented in the KBV Cardinal matrix; Canon, Inc. is the forerunner in the 3D Printing Market. Companies such as Autodesk, Inc., Stratasys Ltd., and 3D Systems Corporation are some of the key innovators in 3D Printing Market. In May, 2022, Stratasys launched F190 CR and F370 CR machines, F123 Series of FDM 3D printers, and FDM Nylon-CF10 material, new carbon fiber-reinforced, developed for manufacturers & industrial machinists to produce end-use components, and jigs, fixtures & work holding tools.
Market Growth Factors
Rising regulatory support by national and local government bodies
Governments worldwide recognize the potential of 3D printing to drive innovation, boost local manufacturing, and address various societal challenges. China has made significant investments in 3D printing as part of its "Made in China 2025" initiative, which aims to upgrade its manufacturing capabilities. The German government has supported various 3D printing projects and research initiatives, especially in Industry 4.0. Germany's Fraunhofer Institute, a leading research organization, has been involved in numerous additive manufacturing projects. Some governments offer tax incentives and subsidies to encourage the adoption of 3D printing in manufacturing and small businesses. These incentives can help reduce the initial investment required for 3D printing equipment and materials. Thus, the rising support from government bodies is enabling the expansion of the market.
Expansion of the global manufacturing sector
The expansion of the global manufacturing sector profoundly impacts the 3D printing market. One significant effect is the growing adoption of 3D printing technology across various manufacturing industries. As manufacturers seek to streamline their production processes, reduce lead times, and improve cost efficiency, 3D printing offers an attractive solution. Moreover, the expansion has led to greater collaboration between traditional manufacturing processes and 3D printing. Companies are integrating 3D printing to create tooling, molds, and prototypes, supporting a seamless transition from design to production. Therefore, the expansion of the global manufacturing sector has significantly impacted the 3D printing market by driving adoption, fostering innovation, promoting on-demand production, and encouraging collaboration between 3D printing and traditional manufacturing processes.
Market Restraining Factors
High initial costs and limited material selection
The high initial costs associated with 3D printing technology can significantly hinder its broader adoption and growth. For many businesses and organizations, especially smaller enterprises, the substantial upfront investment required to acquire 3D printing equipment and related infrastructure can be a deterrent. These costs encompass the purchase of the 3D printer itself and the expenditure on materials, software, and maintenance. Consequently, the restricted material selection can hinder the adoption of 3D printing in industries that demand a broader range of material options for their production needs. Thus, the high initial costs and limited material selection significantly deter the growth of the 3D printing market.
Component Outlook
Based on components, the 3D printing market is characterized into product, software, and services. The services segment procured a considerable growth rate in the 3D printing market in 2022. The service segment is gaining significant momentum as a source of profit generation as a result of advancements in printing technology and materials. Many businesses across various industries are anticipated to outsource everything, from product design to production, to survive in the fiercely competitive markets, as 3D printing technology makes it possible to manufacture products with complicated shapes and presents competitive pricing in contrast to traditional manufacturing methods.
Product Outlook
The product segment is further segmented into printer and material. The printer segment acquired the largest revenue share in the 3D printing market in 2022. 3D printers are versatile tools that offer rapid prototyping, enabling designers to quickly iterate and test their concepts. These printers are cost-effective for low-volume production, promote customization, and reduce material waste. They support on-demand and localized manufacturing, shortening supply chains, and can serve as educational tools.
Printer Outlook
The printer segment is further bifurcated into industrial and desktop. The desktop segment garnered a remarkable growth rate in the revenue share in the 3D printing market in 2022. Desktop 3D printers are typically more budget-friendly than industrial-grade counterparts, making them accessible to individuals, hobbyists, small businesses, and educational institutions with limited budgets. Many desktop 3D printers are designed to be user-friendly and require minimal setup. They often come with intuitive software interfaces that simplify the 3D printing process, making it accessible to beginners.
Software Outlook
On the basis of software, the 3D printing market is divided into design software, inspection software, printer software, and scanning software. The design software segment recorded the largest revenue share in the 3D printing market in 2022. 3D design software offers a plethora of benefits. It empowers designers and engineers to create intricate 3D models with precision and ease, facilitating rapid prototyping and product development. They often include design validation and analysis features, helping identify and address potential issues early in the design process.
Technology Outlook
By technology, the 3D printing market is segmented into stereolithography, selective laser sintering, electron beam melting, fused deposition modeling, laminated object manufacturing, and others. The stereolithography segment garnered the maximum revenue share in the 3D printing market in 2022. Stereolithography (SLA) is known for its exceptional precision and surface finish. It excels at producing highly detailed and intricate parts, making it ideal for jewelry, dentistry, and medical field applications. SLA's ability to create complex geometries with minimal support structures reduces post-processing efforts, saving time and resources.
Application Outlook
Based on application, the 3D printing market is classified into education/research, visual aids, presentation modeling, fit & assembly, prototype tooling, metal casting, functional parts, and others. The fit and assembly segment witnessed a remarkable growth rate in the 3D printing market in 2022. 3D printing's precision in creating parts with exact fit and assembly capabilities is invaluable. It enables the production of seamlessly integrated components, reducing the need for post-processing adjustments. This leads to enhanced product quality, streamlined manufacturing, and reduced assembly time. The technology also supports just-in-time production, eliminating excess inventory and reducing storage costs.
Vertical Outlook
On the basis of vertical, the 3D printing market is fragmented into education, industrial, automotive, aerospace & defense, healthcare, consumer goods, construction, and others. The aerospace and defense segment recorded a considerable growth rate in the 3D printing market in 2022. 3D printing has become a game-changer in the aerospace and defense sectors by significantly reducing the weight of aircraft and spacecraft components, enhancing fuel efficiency, and lowering production costs. The technology allows for the rapid prototyping and production of complex, lightweight, and high-strength parts, which translates to improved performance, reduced maintenance needs, and faster innovation cycles.
Regional Outlook
Region-wise, the 3D printing market is analyzed across North America, Europe, Asia Pacific, and LAMEA. The North America region procured the maximum revenue share in the 3D printing market in 2022. North American manufacturers increasingly use 3D printing for low-volume and small-batch production runs. The COVID-19 pandemic underscored the importance of supply chain resilience. 3D printing supports localized and on-demand manufacturing, reducing reliance on global supply chains and ensuring a more resilient production process. North America's healthcare industry has embraced 3D printing for applications like patient-specific implants, surgical guides, and medical devices. These applications improve patient outcomes, reduce surgery times, and enhance medical treatment.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Hoganas AB, 3D Systems Corporation, Materialise NV, General Electric Company, Stratasys Ltd., Autodesk, Inc., The ExOne company (Desktop Metal, Inc.), Organovo Holdings, Inc., voxeljet AG and Canon, Inc.
Recent Strategies Deployed in 3D Printing Market
Product Launches and Product Expansions:
Jun-2023: Voxeljet AG unveiled Cold IOB, a new inorganic 3D process technology. This launch would be an important step towards further adoption of printed cores and molds with inorganic binders in the foundry industry.
Oct-2022: General Electric Company released the Series 3 binder jet platform. The Series 3 has the capability of depositing a proprietary binder into parts with a maximum weight of 25 kilos and 500µm wall thickness. Series 3 is based on the Beta versions of H1 Alpha and H2 models and facilitates continuous production of parts that are of better quality than their casting equivalents.
Jun-2022: Stratasys unveiled Stratasys RadioMatrix, the latest material for its Digital Anatomy 3D printers. This material makes it possible to produce 'radio-realistic models' that could be under CT scans & X-rays. In addition, the material is the first radiopaque material available for polymer 3D printing leading providers to largely adopt Digital Anatomy systems, which would enable consumers to create full color & biomechanically realistic models for training, pre-surgical planning & medical device development.
May-2022: Stratasys launched F190 CR and F370 CR machines, F123 Series of FDM 3D printers, and FDM Nylon-CF10 material, new carbon fiber-reinforced. The latest composite 3D printers are developed for manufacturers & industrial machinists to produce end-use components, and jigs, fixtures & work holding tools.
Nov-2021: General Electric Additive unveiled a cloud-based process management software platform at Formnext. The main advantage of the Print Model module comprises automation of manual tasks, like support generation, nesting & slicing to process an ability to carry out design work while process-intensive tasks run in the background.
Oct-2021: Autodesk unveiled the latest version of its Netfabb 3D printing, design, and simulation platform. This platform is developed to offer customers a more refined experience and update its tool pathing and simulation tools.
May-2021: Stratasys introduced three new 3D printers. These printers together would address a huge portion of the multi-billion-dollar market growth prospect in additive manufacturing of end-use parts. These systems would enhance the shift from conventional to additive manufacturing for low-to-mid-volume production applications underserved by conventional manufacturing ways.
Mar-2021: Stratasys launched the J5 DentaJet 3D printer. The J5 DentaJet is the only multi-material dental 3D printer, that allows technicians to load mixed trays of dental parts. The new 3D printer can give at least five times more dental parts on a single mixed tray than competitive 3D printers, yet its compact footprint takes only 4.6 sq. ft (.43m2) of floor space.
Feb-2021: 3D Systems unveiled a novel High-Speed Fusion industrial 3D printer platform & material portfolio. Under this collaboration with Jabil, this dynamic High-Speed Fusion family of products, comprising the Roadrunner 3D printer, is likely to deliver the best economics of any high throughput industrial fused filament offering in the present market.
Partnerships, Collaborations & Agreements:
May-2023: Materialise NV teamed up with Vuzix Corporation, an optical technology company that specializes in making AR solutions. With this collaboration, the company aims to help industrial smart eyewear advance technologically and accelerate consumer and business market adoption of smart eyewear.
Mar-2022: Stratasys formed a partnership with Oqton and Riven with the continued expansion of the GrabCAD Software Partner Program. This Program is part of the latest unveiled GrabCAD Additive Manufacturing Platform, which would unify GrabCAD applications & third-party GrabCAD Software Partners through the GrabCAD Software Development Kit (SDK).
Mar-2022: Organovo Holdings, Inc. signed an agreement with BICO, a leading provider of life science solutions and laboratory automation. Following this agreement, both companies aimed to widen their product portfolio, and further strengthen it to continue to advance in the 3D bioprinting space.
Feb-2022: 3D Systems Corporations entered into a partnership with Saremco Dental AG. The company aimed to improve its digital dentistry material portfolio. Under this partnership, the companies would expand the distribution of the Swiss manufacturer's CROWNTEC combined resins in the U.S. for 3D printing of biocompatible permanent restorations like onlays, crowns, veneers, inlays, & artificial teeth for dentures within dental clinics & labs.
Nov-2021: Stratasys entered into a partnership with ECCO, a Danish shoe manufacturer and retailer. This partnership aimed to innovate footwear manufacturing using 3D printing technology, which would boost automation and a more simplified development process.
Sep-2021: General Electric Renewable Energy formed a partnership with Fraunhofer and Voxeljet. The companies aimed to create the world's largest 3D printer for offshore wind applications. Under this partnership, the companies would develop a large-format 3D printer capable of producing sand molds to cast metal parts for use in an offshore wind turbine nacelle.
Feb-2021: ExOne came into a partnership with ABC Corporation. This partnership aimed to authorize ABC Corporation as a channel partner to sell ExOne industrial solutions in South Korea.
Mergers & Acquisition:
Sep-2022: Materialise acquired Identify3D, a company that develops software to encrypt, distribute, and trace the flow of digital parts across complex supply chains. With this acquisition, the company would enable the manufacturers to secure the flow of digital parts and maintain a competitive advantage.
Feb-2022: 3D Systems took over Titan Additive, a polymer extrusion 3D printing company. This acquisition aimed at expanding the company's reach in the medical & industrial market, which would enable the company to address its consumers' needs for large build volumes, superior performance & enhanced productivity at a lesser cost.
Feb-2022: 3D Systems signed an agreement to acquire Kumovis, an additive manufacturing solutions provider for personalized healthcare applications. In this acquisition, 3D Systems aimed to add a unique extrusion technology to its extensive polymer printing healthcare portfolio, enabling the company to expand its addressable market for customized healthcare applications.
Nov-2021: Materialize signed an agreement to acquire Link3D, an additive workflow & digital manufacturing software company. By combining Link3D's additive MES (Manufacturing Execution System) solution with the Materialise Magics software suite into a unified, cloud-based software platform, various manufacturers would be able to run and constantly enhance the most efficient, repeatable, automated, and controlled processes to mass-produce identical or personalized products.
Oct-2021: 3D Systems took over Volumetric Biotechnologies, a Houston-based biotech company. Under this acquisition, 3D Systems would establish a top-class research capability in Houston, Texas that would be determined to lead in technologies associated with life sciences.
Apr-2021: The ExOne Company took over Freshmade 3D, an Ohio-based startup. This acquisition aimed to strengthen ExOne's position as a provider of large-format 3D printed tooling for various industrial applications.
Geographical Expansions:
Sep-2022: Autodesk expanded its geographical footprint by opening its UK Technology Centre in Birmingham. This center would assist people in solving the world's most innovative high-value manufacturing challenges. This center would house a variety of tools from subtractive to additive manufacturing (AM) and robotics and would benefit customers such as BMW and GKN Aerospace
Apr-2022: General Electric Company announced the establishment of a new research and development facility in Bergen, New York, United States. The new facility would be used for researching 3D printing of wind turbine's concrete base.
Feb-2021: 3D Systems expanded its geographical footprints in South Carolina headquarters through the addition of 100,000 square feet in space. The expansion is established as a vehicle that would bring to market his Stereolithography 3D printing technology.
Market Segments covered in the Report:
By Component
By Technology
By Application
By Vertical
By Geography
Companies Profiled
Unique Offerings from KBV Research